Shape effect of Co nanoparticles on the electric and magnetic properties of Co–SiO2 nanogranular films

Author:

Kijima-Aoki Hanae1,Endo Yasushi234,Miyazaki Takamichi2,Nojima Tsutomu5ORCID,Ikeda Kenji6,Kobayashi Nobukiyo6,Ohnuma Shigehiro16,Masumoto Hiroshi1

Affiliation:

1. Frontier Research Institute for Interdisciplinary Sciences, Tohoku University, 6-3, Aramaki Aoba, Aoba-ku, Sendai 980-8578, Japan

2. Graduate School of Engineering, Tohoku University, 6-6-5, Aramaki Aoba, Aoba-ku, Sendai 980-8578, Japan

3. Center for Science and Innovation Spintronics, Tohoku University, 2-1-1, Katahira, Aoba-ku, Sendai 980-8577, Japan

4. Center for Spintronics Research Networks, Tohoku University, 2-1-1, Katahira, Aoba-ku, Sendai 980-8577, Japan

5. Institute for Materials Research, Tohoku University, 2-1-1, Katahira, Aoba-ku, Sendai 980-8577, Japan

6. Research Institute for Electromagnetic Materials, DENJIKEN, 9-5-1, Narita, Tomiya 981-3341, Japan

Abstract

Controlling the magnetic anisotropy of nanoparticles is a crucial but challenging step for developing new magnetic functions. Here, we demonstrate a simple approach to controlling the shape of Co nanoparticles in a Co-SiO2 nanogranular film from oblate to prolate spheroid by varying the substrate rotation speed during the tandem fabrication process without changing the film composition (Co:SiO2 = 3:7). Changing the nanoparticles from oblate to prolate, increasing perpendicular length of ellipsoidal nanoparticles, changes the magnetic anisotropy axis of Co–SiO2 nanogranular films from in-plane to out-of-plane, which indicates that the shape anisotropy profoundly affects the magnetic properties. Despite the small tunneling current of a few tens of nanoamperes, a maximum tunneling magnetoresistance effect of up to 2.8 % was realized under an applied magnetic field of 12 kOe in the film plane. Achieving both in-plane and perpendicular spin-dependent tunneling, the anisotropic nanogranular films imply direction controllable tunneling materials as future topological nanoarchitecture. Such high-resistivity nanogranular films with a controllable magnetic nanoparticle shape facilitate the design of new magneto-optical devices with high withstand voltages.

Funder

Japan Society for the Promotion of Science

Publisher

AIP Publishing

Subject

General Physics and Astronomy

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Magnetic circular dichroism of Co nanoparticles localized in matrices of various types;Materialia;2023-05

2. Magnetic nanopillars in self-organized magneto-dielectric nanocomposite thin films;2023 IEEE International Magnetic Conference - Short Papers (INTERMAG Short Papers);2023-05

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